Solid waste brickmaking material mixing machine

By introducing crushing and mixing components and drive components into the brick-making equipment, the problem of uneven mixing was solved, and uniform mixing of solid waste powder was achieved, thereby improving the quality and safety of the finished product.

CN223961469UActive Publication Date: 2026-03-03SHANDONG RONGYAN HENGCHANG ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520354498.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-03
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Existing brick-making equipment suffers from uneven mixing during the mixing process, which affects the quality of the finished product.

Method used

A solid waste brick-making material mixer was designed, including a crushing and mixing component and a drive component. After being mixed by an existing mixer, the material is transported into the crushing chamber, where the crushing blades of the crushing and mixing component crush and mix the material again to ensure the uniformity of the material.

Benefits of technology

It achieves thorough and uniform mixing of materials, improves the quality of finished products, and is particularly suitable for viscous solid waste powders, with good practicality and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of brickmaking, in particular to a solid waste brickmaking material mixing machine which enables materials to be mixed uniformly, ensures full uniformity of the materials and improves quality of finished products. Comprising two cross beams, a plurality of longitudinal beams, a plurality of supporting columns, two arc-shaped plates, two end plates, a smashing and mixing assembly and a driving assembly, the two cross beams are connected through the longitudinal beams to form a supporting frame, the supporting columns are connected to the left ends and the right ends of the bottoms of the cross beams, supporting plates are arranged at the bottoms of the supporting columns, and the two arc-shaped plates are installed on the right side of the supporting frame; end plates are installed at the front end and the rear end of the arc-shaped plate to form a smashing cavity, a smashing and mixing assembly is installed in the smashing cavity, and a driving assembly is installed at the top of the left side of the supporting frame and connected with the input end of the smashing and mixing assembly.
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Description

Technical Field

[0001] This utility model relates to the technical field of brick making, and in particular to a solid waste brick-making material mixing machine. Background Technology

[0002] In existing technologies, basic construction materials such as standard bricks, paving bricks, and roadbed materials can be prepared from recycled lithium slag, red mud, gypsum mud, desulfurized gypsum, granulated sand, clay, and other materials, as well as viscous recycled materials such as water-based epoxy soil and coal gangue. The raw material mixing equipment for brick making is mainly used for mixing various powdery materials. It can produce various powdery mixed materials, whose aggregates can be wet fly ash, calcium carbide sludge, phosphogypsum, sand, gravel, slag, etc. However, in existing brick-making equipment, the raw materials are mixed using a mixer before molding, which still suffers from uneven mixing, affecting the quality of the finished product. Utility Model Content

[0003] To solve the above-mentioned technical problems, this utility model provides a solid waste brick-making material mixer that can mix materials evenly, ensure sufficient uniformity of materials, and improve the quality of finished products.

[0004] This utility model discloses a solid waste brick-making material mixer, comprising two crossbeams, multiple longitudinal beams, multiple support columns, two arc-shaped plates, two end plates, a crushing and mixing component, and a drive component. The two crossbeams are connected by multiple longitudinal beams to form a support frame. Support columns are connected to the left and right ends of the bottom of the crossbeams, and support plates are installed at the bottom of the support columns. Two arc-shaped plates are installed on the right side of the support frame, and end plates are installed at the front and rear ends of the arc-shaped plates to form a crushing chamber. The crushing and mixing component is installed inside the crushing chamber. The drive component is installed on the top left side of the support frame and is connected to the input end of the crushing and mixing component. The crushing chamber is connected to the output end of a conventional mixer. The material is first stirred by the conventional mixer, and after stirring, it is discharged into the crushing chamber. The drive component drives the crushing and mixing component to crush and mix the material again, making the material uniform. This method is suitable for solid waste powders and is especially suitable for sticky solid waste materials, ensuring sufficient uniformity of the material and having good practicality.

[0005] Preferably, the crushing and mixing assembly includes two support seats, a rotating shaft, multiple discs, four mounting rods, multiple sets of crushing blades, and a discharge plate. The rotating shaft is located inside the crushing chamber, and its front and rear ends are rotatably mounted on the support seats. The support seats are bolted to a crossbeam. Multiple discs are mounted on the rotating shaft, and four mounting rods are evenly mounted around the rotating shaft axis between the discs. Crushing blades are rotatably mounted on the mounting rods, with adjacent sets of crushing blades alternately arranged. The discharge plate is installed at the bottom of the crushing chamber. After stirring, the material enters the crushing chamber. When the rotating shaft rotates, it drives the mounting rods to rotate through the multiple discs. The mounting rods drive the multiple sets of crushing blades to rotate, further crushing and mixing the material to ensure uniform mixing. The crushing blades are designed for rotary crushing, which is suitable for both solid waste powders and viscous solid waste materials, ensuring sufficient uniformity of the material.

[0006] Preferably, the drive assembly includes pulleys, a motor bracket, a drive motor, a drive pulley, a transmission belt, and protective components. Pulleys are installed at both ends of the rotating shaft. The bottom of the drive motor is mounted on the top of the longitudinal beam via the motor bracket. The output end of the drive motor is connected to the drive pulley. The drive pulley and the pulleys are connected by a transmission belt. When the drive motor is started, the drive pulley and the transmission belt drive the pulleys to rotate. The pulleys drive the rotating shaft to rotate, thus completing the crushing and mixing process.

[0007] Preferably, the protective components include a mounting bracket and a protective cover. The protective cover is mounted on the rear crossbeam via the mounting bracket and is fitted over the outside of the transmission belt. The protective cover protects the pulley, drive pulley, and the outside of the transmission belt, preventing damage to workers from the transmission components and improving safety.

[0008] Preferably, it also includes two connecting rods and multiple triangular plates. The lower parts of the left and right pillars are connected by connecting rods, and the pillars and the crossbeam are connected by triangular plates. The connecting rods and triangular plates can increase the connection strength between the pillars and the crossbeam, ensure the support strength at the bottom, and ensure stability.

[0009] Compared with the prior art, the beneficial effects of this utility model are as follows: the crushing chamber is connected to the output end of the existing mixer. The material is first stirred by the existing mixer. After stirring, the material is discharged into the crushing chamber. The driving component drives the crushing and mixing component to crush and mix the material again, so that the material is mixed evenly. It is suitable for solid waste powder and even more suitable for sticky solid waste materials, ensuring the full uniformity of the material and having good practicality. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the structure of this utility model;

[0011] Figure 2 This is a three-dimensional structural diagram of the rear side of this utility model;

[0012] Figure 3 This is a schematic diagram of the upper cross-sectional structure of this utility model;

[0013] Figure 4 This is a schematic diagram of the rear structure of this utility model;

[0014] Figure 5 This is a schematic diagram of the isometric structure of this utility model;

[0015] Figure 6 This is a schematic diagram of the front cross-sectional structure of this utility model;

[0016] The following are labels in the attached diagram: 1. Crossbeam; 2. Longitudinal beam; 3. Support column; 4. Connecting rod; 5. Triangular plate; 6. Arc plate; 7. End plate; 8. Support base; 9. Rotating shaft; 10. Disc; 11. Mounting rod; 12. Crushing blade; 13. Pulley; 14. Motor bracket; 15. Drive motor; 16. Drive pulley; 17. Transmission belt; 18. Mounting frame; 19. Protective cover; 20. Outlet plate. Detailed Implementation

[0017] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0018] like Figures 1 to 5 As shown, two crossbeams 1 are connected by multiple longitudinal beams 2 to form a support frame. Support columns 3 are connected to the left and right ends of the bottom of the crossbeams 1. Support plates are installed at the bottom of the support columns 3. A connecting rod 4 connects the lower parts of the two support columns 3. A triangular plate 5 connects the support column 3 to the crossbeam 1. Two arc-shaped plates 6 are installed on the right side of the support frame. End plates 7 are installed at the front and rear ends of the arc-shaped plates 6 to form a crushing chamber. A rotating shaft 9 is located inside the crushing chamber. The front and rear ends of the rotating shaft 9 are rotatably mounted on support seats 8. The support seats 8 are bolted to the crossbeams 1. Multiple discs 10 are mounted on the rotating shaft 9. The multiple discs 10 are connected about... Four mounting rods 11 are evenly installed axially on the rotating shaft 9. Crushing blades 12 are rotatably mounted on the mounting rods 11. Adjacent sets of crushing blades 12 are alternately arranged. The guide plate 20 is installed at the bottom of the crushing chamber. Pulleys 13 are installed at the front and rear ends of the rotating shaft 9. The bottom of the drive motor 15 is installed on the top of the longitudinal beam 2 through the motor bracket 14. The output end of the drive motor 15 is connected to the drive pulley 16. The drive pulley 16 and the pulley 13 are connected by a transmission belt 17. A protective cover 19 is installed on the rear crossbeam 1 through the mounting bracket 18. The protective cover 19 is fitted outside the transmission belt 17.

[0019] In use, the crushing chamber is connected to the output end of a conventional mixer. After mixing, the material enters the crushing chamber. The drive motor 15 is started, which drives the pulley 13 to rotate via the drive pulley 16 and the transmission belt 17. The pulley 13 drives the rotating shaft 9 to rotate, completing the crushing and mixing. When the rotating shaft 9 rotates, it drives the mounting rod 11 to rotate via multiple discs 10. The mounting rod 11 drives multiple sets of crushing blades 12 to rotate, further crushing and mixing the material to ensure uniform mixing. The crushing blades 12 are designed for rotary crushing, which is suitable for both solid waste powder and sticky solid waste materials, ensuring sufficient uniformity of the material. The protective cover 19 protects the pulley 13, drive pulley 16, and transmission belt 17 from external damage to the workers, improving safety. The connecting rod 4 and triangular plate 5 increase the connection strength between the support column 3 and the crossbeam 1, ensuring the support strength at the bottom and ensuring stability.

[0020] like Figures 1 to 6 As shown, the solid waste brick-making material mixer of this utility model connects the crushing chamber to the output end of a conventional mixer during operation. The material is stirred by the conventional mixer, and then enters the crushing chamber. The drive motor 15 is started, which drives the pulley 13 to rotate through the drive pulley 16 and the transmission belt 17. The pulley 13, drive pulley 16, and transmission belt 17 are protected by a protective cover 19 to prevent damage to the workers from the transmission components. The pulley 13 drives the rotating shaft 9 to rotate. When the rotating shaft 9 rotates, it drives the mounting rod 11 to rotate through multiple discs 10. The mounting rod 11 drives multiple sets of crushing blades 12 to rotate, further crushing and mixing the material to make the material uniform. The crushing blades 12 are designed for rotary crushing, which is suitable for solid waste powder and even more suitable for sticky solid waste materials, ensuring the full uniformity of the material.

[0021] The drive motor 15 of the solid waste brick-making material mixer of this utility model is purchased from the market. Technical personnel in this industry only need to install and operate it according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.

[0022] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A solid waste brick making material mixing machine characterized by, The utility model relates to a kind of support frame, including two cross beams (1), multiple longitudinal beams (2), multiple struts (3), two arc plates (6), two end plates (7), a crushing mixing component and a driving component, multiple longitudinal beams (2) are connected between two cross beams (1), form support frame, and the bottom of cross beam (1) is connected with strut (3) at left and right ends, and strut (3) bottom is provided with support plate, two arc plates (6) are installed in support frame right side, and arc plate (6) is installed with end plate (7) at front and back ends, forms crushing cavity, and crushing cavity is installed with crushing mixing component, and support frame left side top is installed with driving component, and driving component is connected with the input end of crushing mixing component.

2. The solid waste brick-making material mixing machine as claimed in claim 1, wherein, The utility model relates to a kind of support frame, including two cross beams (1), multiple longitudinal beams (2), multiple struts (3), two arc plates (6), two end plates (7), a crushing mixing component and a driving component, multiple longitudinal beams (2) are connected between two cross beams (1), form support frame, and the bottom of cross beam (1) is connected with strut (3) at left and right ends, and strut (3) bottom is provided with support plate, two arc plates (6) are installed in support frame right side, and arc plate (6) is installed with end plate (7) at front and back ends, forms crushing cavity, and crushing cavity is installed with crushing mixing component, and support frame left side top is installed with driving component, and driving component is connected with the input end of crushing mixing component.

3. The solid waste brick-making material mixing machine as claimed in claim 2, wherein, The utility model relates to a kind of support frame, including two cross beams (1), multiple longitudinal beams (2), multiple struts (3), two arc plates (6), two end plates (7), a crushing mixing component and a driving component, multiple longitudinal beams (2) are connected between two cross beams (1), form support frame, and the bottom of cross beam (1) is connected with strut (3) at left and right ends, and strut (3) bottom is provided with support plate, two arc plates (6) are installed in support frame right side, and arc plate (6) is installed with end plate (7) at front and back ends, forms crushing cavity, and crushing cavity is installed with crushing mixing component, and support frame left side top is installed with driving component, and driving component is connected with the input end of crushing mixing component.

4. The solid waste brick-making material mixing machine as claimed in claim 3, wherein, The utility model relates to a kind of support frame, including two cross beams (1), multiple longitudinal beams (2), multiple struts (3), two arc plates (6), two end plates (7), a crushing mixing component and a driving component, multiple longitudinal beams (2) are connected between two cross beams (1), form support frame, and the bottom of cross beam (1) is connected with strut (3) at left and right ends, and strut (3) bottom is provided with support plate, two arc plates (6) are installed in support frame right side, and arc plate (6) is installed with end plate (7) at front and back ends, forms crushing cavity, and crushing cavity is installed with crushing mixing component, and support frame left side top is installed with driving component, and driving component is connected with the input end of crushing mixing component.

5. The solid waste brick-making material mixing machine as claimed in claim 1, wherein, The utility model relates to a kind of support frame, including two cross beams (1), multiple longitudinal beams (2), multiple struts (3), two arc plates (6), two end plates (7), a crushing mixing component and a driving component, multiple longitudinal beams (2) are connected between two cross beams (1), form support frame, and the bottom of cross beam (1) is connected with strut (3) at left and right ends, and strut (3) bottom is provided with support plate, two arc plates (6) are installed in support frame right side, and arc plate (6) is installed with end plate (7) at front and back ends, forms crushing cavity, and crushing cavity is installed with crushing mixing component, and support frame left side top is installed with driving component, and driving component is connected with the input end of crushing mixing component.